Batch yarn steaming device for polyester yarns
By designing the adjustment mechanism and support unit of the polyester yarn batch steaming device, the problems of uneven heating of the yarn bobbins and inconvenient material removal are solved, efficient support of the yarn bobbins and increase of the heating area are achieved, thereby improving production efficiency.
Patent Information
- Application Number
- CN202422448385.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-11
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-10-11
AI Technical Summary
In existing polyester yarn steaming devices, contact between yarn bobbins results in uneven heating, inconvenience in material removal, and affects production efficiency.
A polyester yarn batch steaming device was designed. Through the adjustment mechanism and support unit, the movable blocks were pushed out of the vertical pole one by one by using components such as the rotating block, rotating rod, support rod and guide rod, so that the yarn bobbins could be supported and placed one by one, the heating area was increased, and the yarn removal was convenient.
The yarn bobbins can be supported and placed one by one, the heating area and material taking efficiency are increased, and the production efficiency is improved.
Smart Images

Figure CN223397907U_ABST
Abstract
Description
Technical field:
[0001] The utility model relates to the technical field of yarn steaming, in particular to a polyester yarn batch steaming device. Background technology:
[0002] During the process of wool spinning raw materials being processed into yarn, due to repeated force and friction, the internal stress is unbalanced, deformation occurs, fatigue and static electricity are generated; at the same time, after twisting, the wool yarn has a huge untwisting torque, which will affect the subsequent production. After steaming, the wool yarn is under wet and hot conditions, and the connection between the fiber macromolecules is relaxed, and then recombined in a new position, thereby eliminating fiber fatigue and static electricity, stabilizing the twist, and preventing the generation of small braid kinks in the subsequent process.
[0003] In the prior art, when polyester yarn is steamed, each yarn tube is generally separated by placing a cardboard board between each yarn tube to increase the heating area of the yarn. However, the yarn tubes still partially remain in contact with each other, which affects the heating and makes it inconvenient to remove the material. Utility model content:
[0004] The purpose of the utility model is to provide a polyester yarn batch steaming device to solve the problems in the above-mentioned background technology in view of the defects of the prior art.
[0005] A polyester yarn batch steaming device comprises a yarn steaming box, a movable base is slidably mounted on the inner side of the yarn steaming box, a vertical rod is fixed on the top of the movable base, and an adjustment mechanism is provided on the vertical rod;
[0006] The adjustment mechanism includes a transmission unit and a support unit;
[0007] The transmission unit includes a rotating block, a rotating rod, and a push rod. The rotating block is rotatably installed on the top of the vertical pole. The rotating block is used to synchronously drive the rotating rod to rotate. The rotating rod is fixed at the bottom end of the rotating block and extends to the inside of the vertical pole. The rotating rod is used to drive the push rod to rotate. The push rod is fixed on the outer wall of the rotating rod. The push rod is used to give rotational thrust to each force-bearing block one by one.
[0008] By adopting the above technical solution, this structure can provide rotational thrust for the rotating ring.
[0009] The support unit includes a rotating ring, a force-bearing block, a guide rod, a movable block, and a guide groove;
[0010] The rotating ring is rotatably mounted inside the vertical rod, and the rotating ring is used to drive the guide rod to rotate;
[0011] The force-bearing block is fixed on the top of the rotating ring, and is used to receive the thrust from the push rod to drive the rotating ring to rotate;
[0012] The guide rod is fixed to the bottom end of the rotating ring, and the guide rod is used to give thrust to the guide groove;
[0013] The movable block is axially slidably mounted on the inner wall of the vertical pole and extends to the outside of the vertical pole, and the movable block is used to provide support for each yarn bobbin;
[0014] The guide groove is arranged at the top end of the movable block, and is used for receiving the thrust from the guide rod.
[0015] By adopting the above technical solution, each movable block can be moved out of or put into the interior of the vertical pole one by one through this structure.
[0016] There are multiple movable blocks, and the multiple movable blocks are grouped in pairs, and the movable blocks in a group are evenly distributed vertically on the outside of the vertical pole.
[0017] By adopting the above technical solution, the structure provides support for the yarn bobbin.
[0018] The outer wall of the guide groove is in an inclined state as a whole, and the inner side of the guide groove matches the outer wall of the guide rod.
[0019] By adopting the above technical solution, through this structure, after the guide rod rotates, the inclined guide groove can provide the movable block with axial movement thrust.
[0020] There are three push rods, and the three push rods are evenly distributed on the outer wall of the rotating rod.
[0021] By adopting the above technical solution, this structure provides thrust for the movement of multiple movable blocks.
[0022] The push rod located at the bottom of the rotating block is directly fixedly connected to the outer wall of the force block, wherein the push rod at the middle position is fixed to the outer wall of the rotating rod in a "V" shape, wherein the force block at this position and the two ends of the push rod have an angle of forty-five degrees, and the push rod at the top position is distributed on the outer wall of the rotating rod in a "V" shape at forty-five degrees, wherein the force block at this position and the two ends of the push rod have an angle of twenty-two point five degrees.
[0023] By adopting the above technical solution, this structure can intermittently provide rotational thrust to each load-bearing block.
[0024] The beneficial effects of the polyester yarn batch steaming device of the utility model are:
[0025] By setting up an adjustment mechanism, when the yarn bobbin needs to be steamed, the rotating block can be given a rotating force to drive the rotating rod to rotate, and the different angles of the resistance rod can be used to give each force-bearing block a thrust, and the top rotating ring can be rotated to make each movable block move out of the vertical pole one by one from bottom to top, so that each yarn bobbin can be placed one by one, the heating area of each yarn bobbin can be increased, and it can be quickly taken out, which further improves work efficiency. Description of the drawings:
[0026] Figure 1 This is a schematic diagram of the overall structure of the polyester yarn batch steaming device proposed in the present invention;
[0027] Figure 2 This is a cross-sectional view of the internal structure of the vertical pole of the polyester yarn batch steaming device proposed in the present invention;
[0028] Figure 3 This is a schematic structural diagram of the exploded state of the guide rods and guide grooves of the polyester yarn batch steaming device proposed by the present invention.
[0029] In the figure: 1. yarn steaming box; 2. movable base; 3. vertical pole; 4. adjusting mechanism; 401. rotating block; 402. rotating rod; 403. support rod; 404. rotating ring; 405. force block; 406. guide rod; 407. movable block; 408. guide groove. Specific implementation method:
[0030] The preferred embodiments of the present invention are described in detail below in conjunction with the accompanying drawings so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby making a clearer and more precise definition of the protection scope of the present invention.
[0031] Reference Figures 1 to 3 A polyester yarn batch steaming device includes a steaming box 1, a movable base 2 is slidably mounted on the inner side of the steaming box 1, a vertical rod 3 is fixed on the top of the movable base 2, and an adjustment mechanism 4 is provided on the vertical rod 3;
[0032] The adjustment mechanism 4 includes a transmission unit and a support unit. The transmission unit is used to provide thrust for the movement of the support unit, and the support unit is used to provide support for each yarn bobbin.
[0033] The transmission unit includes a rotating block 401, a rotating rod 402, and a supporting rod 403. The rotating block 401 is rotatably mounted on the top of the vertical rod 3. The rotating block 401 is used to synchronously drive the rotating rod 402 to rotate. The rotating rod 402 is fixed to the bottom end of the rotating block 401 and extends to the inside of the vertical rod 3. The rotating rod 402 is used to drive the supporting rod 403 to rotate. The supporting rod 403 is fixed to the outer wall of the rotating rod 402. The supporting rod 403 is used to give rotational thrust to each force-bearing block 405 one by one;
[0034] The supporting unit includes a rotating ring 404, a force block 405, a guide rod 406, a movable block 407, and a guide groove 408. The rotating ring 404 is rotatably installed inside the vertical rod 3. The rotating ring 404 is used to drive the guide rod 406 to rotate. The force block 405 is fixed at the top of the rotating ring 404. The force block 405 is used to receive the thrust from the support rod 403 and drive the rotating ring 404 to rotate. The guide rod 406 is fixed at the bottom end of the rotating ring 404. The guide rod 406 is used to give thrust to the guide groove 408. The movable block 407 is axially slidably installed on the inner wall of the vertical rod 3 and extends to the outside of the vertical rod 3. The movable block 407 is used to provide support for each yarn bobbin. The guide groove 408 is opened at the top of the movable block 407. The guide groove 408 is used to receive the thrust from the guide rod 406.
[0035] When the yarn bobbin needs to be steamed, the steaming box 1 is opened to move the movable base 2 out of the steaming box 1. At this time, the rotating block 401 at the top of the vertical rod 3 can be given a rotational force, and the rotation block 401 under force rotates synchronously to drive the rotating rod 402 to rotate, and the rotating rotating rod 402 drives the supporting rod 403 fixed on the outer wall to rotate, and the rotational force is transmitted to the force-bearing block 405 through the supporting rod 403, so that the rotating ring 404 fixed with the force-bearing block 405 rotates synchronously in the circumferential direction, then the guide rod 406 fixed at the bottom of the force-bearing block 405 transmits the rotational force to the guide groove 408, so that the movable block 407 moves axially under the action of the inclined surface of the guide groove 408, and the axially moving movable block 407 enters the interior of the vertical rod 3, and its The push rod 403 will contact the force-bearing block 405 in turn and give the force-bearing block 405 a thrust, so that multiple movable blocks 407 enter the interior of the yarn steaming box 1 in turn. At this time, the yarn bobbin can be sleeved on the outer wall of the yarn steaming box 1. When a yarn bobbin is sleeved, the movable block 407 at the bottom of the rotating block 401 is rotated to move out part of it to provide support for the upper yarn bobbin, and then continue to rotate forty-five degrees to provide a thrust for the middle movable block 407 to move out. Similarly, the rotating block 401 is given a forty-five degree rotation force to provide a thrust for the upper movable block 407, thereby achieving the purpose of giving thrust to the movable blocks 407 one by one, so that multiple movable blocks 407 are moved out one by one, providing support for the placement of multiple yarn bobbins, and increasing the heated area of the yarn bobbins.
[0036] There are multiple movable blocks 407, which are grouped in pairs. A group of movable blocks 407 is evenly distributed vertically on the outside of the vertical pole 3. The outer wall of the guide groove 408 is tilted as a whole. The inner side of the guide groove 408 matches the outer wall of the guide rod 406. There are three support rods 403, which are evenly distributed on the outer wall of the rotating rod 402.
[0037] Through this structure, multiple yarn bobbins can be placed on the upper surfaces of multiple movable blocks 407 to provide support for the yarn bobbins, so that there is a certain distance between each yarn bobbin, thereby increasing the heating area.
[0038] A support rod 403 located at the bottom of the rotating block 401 is directly fixedly connected to the outer wall of the force block 405, wherein the support rod 403 in the middle position is fixed in a "V" shape on the outer wall of the rotating rod 402, wherein the force block 405 at this position and the two ends of the support rod 403 have an angle of forty-five degrees, and the support rod 403 at the top position is distributed in a "V" shape at forty-five degrees on the outer wall of the rotating rod 402, wherein the force block 405 at this position and the two ends of the support rod 403 have an angle of twenty-two and a half degrees.
[0039] Through this structure, when the rotating block 401 initially rotates forty-five degrees, the supporting rod 403 in the middle position will contact the outer wall of the force-bearing block 405 without giving any thrust. When the rotating force continues to be given at forty-five degrees, the supporting rod 403 at the top contacts the outer wall of the force-bearing block 405, while the supporting rod 403 in the middle position gives thrust to the force-bearing block 405, and so on, wherein the length of the movable block 407 at the bottom layer gradually becomes larger than the movable blocks 407 at other positions.
[0040] Working principle: by opening the yarn steaming box 1, the movable base 2 is moved out of the interior of the yarn steaming box 1, and at this time, a rotational force can be given to the rotating block 401 at the top of the vertical rod 3, and the rotation of the force-bearing rotating block 401 synchronously drives the rotating rod 402 to rotate, and the rotating rotating rod 402 synchronously drives the supporting rod 403 fixed to the outer wall to rotate, and the rotational force is transmitted to the force-bearing block 405 through the supporting rod 403, so that the rotating ring 404 fixed to the force-bearing block 405 rotates synchronously in the circumferential direction, then the guide rod 406 fixed at the bottom of the force-bearing block 405 transmits the rotational force to the guide groove 408, so that the movable block 407 moves axially under the action of the inclined surface of the guide groove 408, and the axially moving movable block 407 enters the interior of the vertical rod 3, and the other supporting rods 4 03 will also contact the force-bearing block 405 in turn and give the force-bearing block 405 a thrust, so that multiple movable blocks 407 enter the interior of the yarn steaming box 1 in turn. At this time, the yarn tube can be sleeved on the outer wall of the yarn steaming box 1. When a yarn tube is sleeved, the movable block 407 at the bottom of the rotating block 401 is rotated to move out part to provide support for the upper yarn tube, and then continue to rotate forty-five degrees to provide a thrust for the middle movable block 407 to move out, and so on, and give the rotating block 401 a forty-five degree rotation thrust to provide a thrust for the upper movable block 407, thereby achieving the purpose of giving thrust to the movable blocks 407 one by one, so that multiple movable blocks 407 are moved out one by one, providing placement support for multiple yarn tubes, and increasing the heated area of the yarn tubes.
[0041] The above-described embodiments merely represent several implementation methods of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the concept of the present invention, and all such variations and improvements fall within the scope of protection of the present invention.
Claims
1. A polyester yarn batch steaming device, comprising a steaming box (1), a movable base (2) slidably mounted on the inner side of the steaming box (1), a vertical rod (3) fixed to the top of the movable base (2), characterized in that: An adjustment mechanism (4) is provided on the upright pole (3), and the adjustment mechanism (4) comprises a transmission unit and a support unit; The transmission unit comprises a rotating block (401), a rotating rod (402), and a supporting rod (403); the rotating block (401) is rotatably mounted on the top end of the vertical rod (3); the rotating rod (402) is fixed to the bottom end of the rotating block (401) and extends to the inside of the vertical rod (3); and the supporting rod (403) is fixed to the outer wall of the rotating rod (402).
2. The polyester yarn batch steaming device according to claim 1, characterized in that: The support unit comprises a rotating ring (404), a force-bearing block (405), a guide rod (406), a movable block (407), and a guide groove (408); The rotating ring (404) is rotatably mounted inside the vertical pole (3), the force-bearing block (405) is fixed at the top end of the rotating ring (404), the guide rod (406) is fixed at the bottom end of the rotating ring (404), the movable block (407) is axially slidably mounted on the inner wall of the vertical pole (3) and extends to the outside of the vertical pole (3), and the guide groove (408) is opened at the top end of the movable block (407).
3. The polyester yarn batch steaming device according to claim 2, characterized in that: The movable blocks (407) are arranged in a plurality of numbers, and the plurality of movable blocks (407) are arranged in groups of two, and the movable blocks (407) of a group are evenly distributed vertically on the outside of the vertical pole (3).
4. The polyester yarn batch steaming device according to claim 2, characterized in that: The outer wall of the guide groove (408) is in an inclined state as a whole, and the inner side of the guide groove (408) matches the outer wall of the guide rod (406).
5. The polyester yarn batch steaming device according to claim 3, characterized in that: The number of the support rods (403) is three, and the three support rods (403) are evenly distributed on the outer wall of the rotating rod (402).
6. The polyester yarn batch steaming device according to claim 4, characterized in that: The supporting rod (403) at the bottom of the rotating block (401) is directly fixedly connected to the outer wall of the force-bearing block (405), wherein the supporting rod (403) at the middle position is fixed to the outer wall of the rotating rod (402) in a "V" shape, wherein the angle between the two ends of the force-bearing block (405) at this position and the supporting rod (403) is forty-five degrees, and the supporting rod (403) at the top position is distributed at forty-five degrees in a "V" shape on the outer wall of the rotating rod (402), wherein the angle between the two ends of the force-bearing block (405) at this position and the supporting rod (403) is twenty-two and a half degrees.